Home
Class 11
CHEMISTRY
The equilibrium constant K(p) for the re...

The equilibrium constant `K_(p)` for the reaction
`H_(2)(g)+CO_(2)(g)hArrH_(2)(g)+CO(g)`
is 4.0 at `1660^(@)C` Inittally 0.80`H_(2) and 0.80 mole CO_(2)` are injecteed into a 5.0 litre flask what is the equilibrium concentraton of `CO_(2)(g)`?

A

`~~12.3`

B

`~~11.3`

C

`~~11.45`

D

None

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Topper's Solved these Questions

  • CHEMICAL EQUILIBRIUM

    NARENDRA AWASTHI|Exercise Level 1 (Q.93 To Q.122)|1 Videos
  • CHEMICAL EQUILIBRIUM

    NARENDRA AWASTHI|Exercise Level 2|1 Videos
  • ATOMIC STUCTURE

    NARENDRA AWASTHI|Exercise level 2|1 Videos
  • DILUTE SOLUTION

    NARENDRA AWASTHI|Exercise Level 3 - Match The Column|1 Videos

Similar Questions

Explore conceptually related problems

For the reactions : C(s) + O_(2) (g) to CO_(2) (g)

What is the unit of K_(p) for the reaction ? CS_(2)(g)+4H_(4)(g)hArrCH_(4)(g)+2H_(2)S(g)

At a certain temperature the equilibrium constant K_(c) is 0.25 for the reaction A_(2)(g)+B_(2)(g)hArrC_(2)(g)+D_(2)(g) If we take 1 mole of each of the four gases in a 10 litre container ,what would be equilibrium concentration of A_(2) (g)?

Write the equilibrium constant expression for the following reactions. CH_(4)(g) + 2O_(2)(g) hArr CO_(2)(g) + 2H_(2)O(l)

The equilibrium constant K_(c) for the reaction P_(4)(g)hArr 2P_(2)(g) is 1.4 at 400^(@)C. Suppose that 3 moles of P_(4)(g) and 2 moles of P_(2)(g) are mixed in 2 litre container at 400^(@)C. What is the value of reaction quotient (Q_(c)) ?

Equilibrium constant for the reaction 2NO(g) + Cl_(2)(g) hArr 2NOCl(g) is correctly given by the expression

The equilibrium constant for the reaction CO(g)+H_(2)O(g)hArrCO_(2)(g)+H_(2)(g) is 5 how many moles of CO_(2) must be added to 1 litre container alrady containing 3 moles each of CO and H_(2)O to make 2 M equilibrium conentration of CO?

For the reaction H_(2)(g)+I_(2)(g)hArr2HI(g) the equilibrium constant K_(p) changes with

For the reaction H_(2)(g)+CO(g)hArrCO(g)+H_(2)O(g), if the initial concentration of [H_(2)]=[CO_(2)] and x moles /litres of hydrogen is consummed at equilibrium , the correct expression of K_(p) is :

An equilibrium mixture of the reaction 2H_(2)S(g)hArr2H_(2)(g) + S_(2)(g) had 0.5 mole H_(2)S , 0.10 mole H_(2) and 0.4 mole S_(2) in one litre vessel. The value of equilibrium constants (K) in mole litre^(-1) is